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Interactive Transition Metal Elements.

"Transition Metals Matching Cards" is a small knowledge level game to match two identical cards with chemical elements. Fun educational game to study the transition metals group from the periodic table of the elements. Chemistry learning game, suitable for online lessons and interactive classes. Free online game.

This chemistry class game include the following chemical elements:
  • Sc Scandium
  • Ti Titanium
  • V Vanadium
  • Cr Chromium
  • Mn Manganese
  • Fe Iron
  • Co Cobalt
  • Ni Nickel
  • Cu Copper
  • Y Yttrium
  • Zr Zirconium
  • Nb Niobium
Transition Metals Matching Cards Educational Game

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How to play Transition Metals Matching Cards

The game generates 24 random cards with transition metal chemical elements in pairs, where every two cards are the same. Like all matching pairs memory card games, you must open all two same cards one after another to win the game. If you open one element card, try to open the same element card as next card to clear the two cards from the game.

Knowledge Achievements:
Know at least 5 transition metal elements and get +1 Knowledge Level.
Difficulty: Medium.

Transition Metals Matching Cards Screenshot

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Class subject: Transition metal elements.

Many scientists describe a "transition metal" as any element in the d-block of the periodic table, which includes groups 3 to 12 on the periodic table. In actual practice, the f-block lanthanide and actinide series are also considered transition metals and are called "inner transition metals".

Transition metal compounds are paramagnetic when they have one or more unpaired d electrons. The transition metals and their compounds are known for their homogeneous and heterogeneous catalytic activity. This activity is ascribed to their ability to adopt multiple oxidation states and to form complexes.

As implied by the name, all transition metals are metals and thus conductors of electricity. In general, transition metals possess a high density and high melting points and boiling points. These properties are due to metallic bonding by delocalized d electrons, leading to cohesion which increases with the number of shared electrons. However the group 12 metals have much lower melting and boiling points since their full d sub-shells prevent dd bonding, which again tends to differentiate them from the accepted transition metals.

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